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Example · Example 4

Q.Using the example of a bar magnet's north pole being pushed into a closed coil, explain why Lenz's law is a direct consequence of the law of conservation of energy.

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As a bar magnet's north pole is pushed towards a closed coil, the flux through the coil increases. By Lenz's law, the induced current opposes this increase by making the coil's near face a NORTH pole, so the coil REPELS the approaching magnet.

Testing the opposite assumption. Suppose, instead, the induced current made the coil's near face a SOUTH pole, so the coil ATTRACTED the approaching magnet. The magnet would then accelerate towards the coil under this attractive pull, continuously gaining kinetic energy, entirely on its own, with no push from any external agent. At the same time, the induced current flowing through the coil's resistance would dissipate energy as I2RI^2R heat. Both the magnet's growing kinetic energy AND the coil's heat would be appearing from nowhere -- no external work is being done on the system at all in this hypothetical case. This is exactly a perpetual-motion machine: a device that manufactures energy from nothing, which the law of conservation of energy strictly forbids. …

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